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1.
J Pharm Biomed Anal ; 170: 295-304, 2019 Jun 05.
Article in English | MEDLINE | ID: mdl-30951995

ABSTRACT

Near infrared spectroscopy (NIR) was applied to discriminate the roots of salvia miltiorhiza Bunge (Danshen for short) and Salvia yunnanensis C. H. Wright (Zidanshen for short) by means of principal component analysis (PCA), improved and simplified K nearest neighbors (IS-KNN). Furthermore, an ultra-high performance liquid chromatographic (UHPLC) coupled with photodiode-array detector was developed for building fingerprints of lipophilic components of Danshen and Zidanshen, respectively. Basing on NIR information, both PCA and IS-KNN method classified the two kinds of Chinese medical herbs with 100% accuracy. The chromatographic fingerprints of the lipophilic components of Danshen and Zidanshen have 10 and 12 common peaks, respectively. Liquid chromatography coupled with mass spectroscopy (LC-MS-MS) was applied to identify these peaks. Among these, three small peaks in the fingerprints of Zidanshen are not found in Danshen, one of which was identified as α-lapachone, and the other two compounds were not yet identified; a small peak after tanshinone IIA in the fingerprints of Danshen was not found in Zidanshen, which was identified as miltirone. The two herbs have 10 common lipophilic components. The similarity between the two reference chromatograms of Zidanshen and Danshen is 0.902, but the mean similaritie between Zidanshen (or Danshen) fingerprints and its own reference chromatogram is 0.973 (or 0.976). The contents of main lipophilic components are significantly lower in Zidanshen than in Danshen (P < 0.01 or P < 0.05). The results indicate that the two Chinese medical materials are not only different in NIR spectra, but also different in species and quantities of lipophilic components. NIR spectra analysis can identify Danshen and Zidanshen rapidly and accurately. UHPLC coupled with MS analysis demonstrates the detail differences between the two herbs both in species and contents of their lipophilic components.


Subject(s)
Plant Roots/chemistry , Salvia miltiorrhiza/chemistry , Salvia/chemistry , Abietanes/chemistry , Azabicyclo Compounds/chemistry , Chromatography, High Pressure Liquid/methods , Chromatography, Liquid/methods , Cyclooctanes/chemistry , Drugs, Chinese Herbal/chemistry , Evaluation Studies as Topic , Phenanthrenes/chemistry , Piperidines/chemistry , Principal Component Analysis , Tandem Mass Spectrometry/methods
2.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-802326

ABSTRACT

By consulting literatures of traditional Chinese medicine(TCM), comparing data about the morphological description of several species from genus of Salvia, and combining the biological studies in resources,this paper made a textual research for the origin,name,medicinal history,functional dominance and folk application Salviae Yunnanensis Radix. This study aimed to provide a reference for further studies and utilization of Salviae Yunnanensis Radix. The findings revealed that the origin of Zidanshen recorded in ancient Chinese herbal literatures was S. yunnanensis,which were widely used for amenorrhea,dysmenorrhea,irregular menstruation,tumescent pain,limb numbness and many kinds of blood stasis. Relevant clinical application and modern pharmacological evidences of Salviae Yunnanensis Radix are mutually supportive,which indicates that TCM based on clinical experience has a high development value. The herbal literatures revealed that Salviae Yunnanensia Radix has a high research and development value in gynecology,blood stasis and other fields. We shall fully excavate folk experience in clinical application of Salviae Yunnanensis Radix. On this basis, we shall further strengthen relevant researches on material basis,pharmacodynamics and mechanism,in order to promote the utilization of resources and product development of Salviae Yunnanensis Radix.

3.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-774569

ABSTRACT

Fingerprints of lipophilic components in the roots of Salvia miltiorrhiza and S.yunnanensis were analyzed by UPLC-DADand UPLC coupled with mass spectroscopy to evaluate the differences and similarities of the lipophilic components in the two kinds of herbs.The UPLC analysis of 18 batches of S.miltiorrhiza and 16 batches of S.yunnanensis was performed on a 25℃Thermo Accucore C_(18)column(2.1 mm×100 mm,2.6μm)by Shimadzu LC-20AD;mobile phase was 0.026%phosphoric acid(A)-acetonitrile(B)with gradient elution;flow rate was 0.4 m L·min~(-1);detection wavelength was set at 270 nm;injection volume was 2μL.The molecular structures of the lipophilic components were analyzed on a 25℃Thermo Accucore C_(18)column(2.1 mm×100 mm,2.6μm)by Thermo U3000 UPLC Q Exactive Orbitrap LC-MS/MS with a mobile phaseconsisting of 0.1%formic acid water(A)and 0.1%formic acidacetonitrile(B).The mass spectrometry was acquired in positive modes using ESI.There are 10 common peaks in the lipophilic components of S.miltiorrhiza.The similarity between the 16 batches of S.miltiorrhiza and their own reference spectra was greater than 0.942,and the average similarity was 0.973.There are 12 common peaks in the lipophilic components of S.yunnanensis.The similarity between the 18 batches of S.yunnanensis and their own reference spectra was greater than 0.937,and the average similarity was 0.976.The similarity between the reference chromatograms of S.miltiorrhiza and S.yunnanensis was only 0.900.There are three lipophilic components in S.yunnanensis,which are not found in S.miltiorrhiza,and one of which isα-lapachone.There is a lipophilic component in S.miltiorrhiza not found in S.yunnanensis,which may be miltirone.The two herbs contain 8 common lipophilic components including dihydrotanshinoneⅠ,cryptotanshinone,tanshinoneⅠ,tanshinoneⅡ_A,nortanshinone in which the content of tanshinoneⅡ_A,dihydrotanshinoneⅠand cryptotanshinone of S.yunnanensisis significantly lower than that of S.miltiorrhiza(P<0.01),and the contents of tanshinoneⅠand nortanshinone are significantly lower than that of S.miltiorrhiza too(P<0.05).There are significant differences in the types and contents of lipophilic components between the roots of S.miltiorrhiza and S.yunnanensis,and the similarity between the fingerprints of interspecies is much lower than that between the same species.Therefore,the roots of S.miltiorrhiza and S.yunnanensis are two kinds of herbs which are quite different in chemical compounds and compositions.


Subject(s)
Chromatography, Liquid , Abietanes , Molecular Structure , Plant Roots , Salvia miltiorrhiza , Tandem Mass Spectrometry
4.
Angew Chem Int Ed Engl ; 55(5): 1728-32, 2016 Jan 26.
Article in English | MEDLINE | ID: mdl-26791882

ABSTRACT

Active sites in carbon-catalyzed phosgene synthesis from gaseous CO and Cl2 have been identified using C60 fullerene as a model catalyst. The carbon atoms distorted from sp(2) coordination in non-planar carbon units are concluded to generate active Cl2 . Experiments and density functional theory calculations indicate the formation of a surface-bound [C60 ⋅⋅⋅Cl2 ] chlorine species with radical character as key intermediate during phosgene formation. It reacts rapidly with physisorbed CO in a two-step Eley-Rideal-type mechanism.

5.
ChemSusChem ; 8(3): 443-7, 2015 Feb.
Article in English | MEDLINE | ID: mdl-25504838

ABSTRACT

Methyl N-phenyl carbamate was synthesized from aniline by using methyl formate as a green and efficient carbonylating agent. High yields were obtained at milder reaction conditions compared to the conventional CO/CH3 OH route. Studies on the reaction sequence led to suggest an alternative and more efficient route to the carbamate via formanilide as intermediate.


Subject(s)
Aniline Compounds/chemistry , Carbamates/chemical synthesis , Carbon/chemistry , Formic Acid Esters/chemistry , Recycling , Chemistry Techniques, Synthetic , Green Chemistry Technology , Oxidation-Reduction
6.
Angew Chem Int Ed Engl ; 52(51): 13794-7, 2013 Dec 16.
Article in English | MEDLINE | ID: mdl-24346953

ABSTRACT

Adding value with membranes: Improved methane aromatization was achieved by using an oxygen-permeable membrane. The resulting membrane reactor shows a superior methane conversion and a higher resistance towards catalyst deactivation.

7.
Angew Chem Int Ed Engl ; 52(36): 9372-87, 2013 Sep 02.
Article in English | MEDLINE | ID: mdl-23881851

ABSTRACT

We summarize the catalytic synthesis of multiwall carbon nanotubes (MWCNTs). The current understanding of the reaction mechanism is presented, in particular the catalyst design for the CCVD process is analyzed. To complement that, kinetics and reaction engineering aspects are discussed along with the impact of the reaction and reactor operation on the product properties. All these issues are analyzed from the perspective of the industrial synthesis and implications for the application of carbon nanotubes. Carbon-nanotube technology is a perfect example of multi-scale development and covers challenges from the nanometer to the meter scale. Problems, methods, and solutions characteristic for different scales will be highlighted. The Co/Mn catalyst is used as reference as one of the first commercially used technologies for the scalable production of multiwall carbon nanotubes.

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